Highlights
Task:
MODULE LEARNING OUTCOMES
On successful completion of this module the student will be able to:
Apply established principles, concepts and terminology of occupational health and safety within the field of engineering;
Apply the appropriate and safe techniques in the use of hand tools while working with electrical, industrial and mechanical systems within the engineering working environment with ergonomic considerations
Develop knowledge and understanding of various manufacturing processes as applied in general manufacturing.
Develop knowledge and understanding of assembly as applied in general assembly operations.
Develop a practical understanding of assembly through practical work in the SWEATLAB.
Develop a basic understanding of time studies and the purpose of time studies
Apply assembly and joining methods of engineering materials by, inter alia:
- Identifying, listing and differentiating between temporary and permanent assembly and joining methods;
- Identifying and differentiating between the metric and imperial system used in fasteners;
- Recalling, illustrating and describing the terminology used in description, dimensioning and surface treatment of commercially available fasteners;
- Identifying, listing and differentiating between application of soft soldering, silver soldering, brazing and fusion welding;
- Listing the different heat sources used in performing of soft soldering, silver soldering, brazing and fusion welding operations;
- Listing the functions of fluxes used in performing of soft soldering, silver soldering and brazing and fusion welding operations;
- Describing the components and zones of a fusion weld;
- Describing the testing methods used for the inspection and verification of a fusion weld;
Identifying and differentiating between conventional and solid state fusion welds and welding operations;
Communicate an understanding of the concepts and terminology applied to computer numeric control, laser cutting, vacuum forming and rapid prototyping by, inter alia:
- Describing by means of flow diagrams how cnc systems work;
- Generating 2d drawings for computer numeric control processing, vacuum forming and laser cutting;
- Generating code for logic sequential programming of a virtual cnc machine;
- Recalling, listing and describing the fundamentals of rapid prototyping;
- Describing the modern rapid prototyping technologies;
- Describing the application rapid prototyping in engineering;
- Describing the most common problems associated with rapid prototyping.
- Demonstrate an understanding of the processes and procedures applied to the cnc process by loading a cnc program into virtual machine and executing the operation with correctional fault finding;
- Analyse various scenarios within an engineering working environment and compile a basic analysis of the risks involved and the impact that an event could have with consideration to human work factors, quality control and inventory analysis.
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